elf32-m68hc11.c revision 1.1.1.5 1 1.1 christos /* Motorola 68HC11-specific support for 32-bit ELF
2 1.1.1.5 christos Copyright (C) 1999-2017 Free Software Foundation, Inc.
3 1.1 christos Contributed by Stephane Carrez (stcarrez (at) nerim.fr)
4 1.1 christos (Heavily copied from the D10V port by Martin Hunt (hunt (at) cygnus.com))
5 1.1 christos
6 1.1 christos This file is part of BFD, the Binary File Descriptor library.
7 1.1 christos
8 1.1 christos This program is free software; you can redistribute it and/or modify
9 1.1 christos it under the terms of the GNU General Public License as published by
10 1.1 christos the Free Software Foundation; either version 3 of the License, or
11 1.1 christos (at your option) any later version.
12 1.1 christos
13 1.1 christos This program is distributed in the hope that it will be useful,
14 1.1 christos but WITHOUT ANY WARRANTY; without even the implied warranty of
15 1.1 christos MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 1.1 christos GNU General Public License for more details.
17 1.1 christos
18 1.1 christos You should have received a copy of the GNU General Public License
19 1.1 christos along with this program; if not, write to the Free Software
20 1.1 christos Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21 1.1 christos MA 02110-1301, USA. */
22 1.1 christos
23 1.1 christos #include "sysdep.h"
24 1.1 christos #include "bfd.h"
25 1.1 christos #include "bfdlink.h"
26 1.1 christos #include "libbfd.h"
27 1.1 christos #include "elf-bfd.h"
28 1.1 christos #include "elf32-m68hc1x.h"
29 1.1 christos #include "elf/m68hc11.h"
30 1.1 christos #include "opcode/m68hc11.h"
31 1.1 christos
32 1.1 christos /* Relocation functions. */
33 1.1 christos static reloc_howto_type *bfd_elf32_bfd_reloc_type_lookup
34 1.1 christos (bfd *, bfd_reloc_code_real_type);
35 1.1 christos static void m68hc11_info_to_howto_rel
36 1.1 christos (bfd *, arelent *, Elf_Internal_Rela *);
37 1.1 christos
38 1.1 christos /* Trampoline generation. */
39 1.1 christos static bfd_boolean m68hc11_elf_size_one_stub
40 1.1 christos (struct bfd_hash_entry *gen_entry, void *in_arg);
41 1.1 christos static bfd_boolean m68hc11_elf_build_one_stub
42 1.1 christos (struct bfd_hash_entry *gen_entry, void *in_arg);
43 1.1 christos static struct bfd_link_hash_table* m68hc11_elf_bfd_link_hash_table_create
44 1.1 christos (bfd* abfd);
45 1.1 christos
46 1.1 christos /* Linker relaxation. */
47 1.1 christos static bfd_boolean m68hc11_elf_relax_section
48 1.1 christos (bfd *, asection *, struct bfd_link_info *, bfd_boolean *);
49 1.1 christos static void m68hc11_elf_relax_delete_bytes
50 1.1 christos (bfd *, asection *, bfd_vma, int);
51 1.1 christos static void m68hc11_relax_group
52 1.1 christos (bfd *, asection *, bfd_byte *, unsigned, unsigned long, unsigned long);
53 1.1 christos static int compare_reloc (const void *, const void *);
54 1.1 christos
55 1.1 christos /* Use REL instead of RELA to save space */
56 1.1 christos #define USE_REL 1
57 1.1 christos
58 1.1 christos /* The Motorola 68HC11 microcontroller only addresses 64Kb but we also
59 1.1 christos support a memory bank switching mechanism similar to 68HC12.
60 1.1 christos We must handle 8 and 16-bit relocations. The 32-bit relocation
61 1.1 christos are used for debugging sections (DWARF2) to represent a virtual
62 1.1 christos address.
63 1.1 christos The 3-bit and 16-bit PC rel relocation is only used by 68HC12. */
64 1.1 christos static reloc_howto_type elf_m68hc11_howto_table[] = {
65 1.1 christos /* This reloc does nothing. */
66 1.1 christos HOWTO (R_M68HC11_NONE, /* type */
67 1.1 christos 0, /* rightshift */
68 1.1.1.3 christos 3, /* size (0 = byte, 1 = short, 2 = long) */
69 1.1.1.3 christos 0, /* bitsize */
70 1.1 christos FALSE, /* pc_relative */
71 1.1 christos 0, /* bitpos */
72 1.1 christos complain_overflow_dont,/* complain_on_overflow */
73 1.1 christos bfd_elf_generic_reloc, /* special_function */
74 1.1 christos "R_M68HC11_NONE", /* name */
75 1.1 christos FALSE, /* partial_inplace */
76 1.1 christos 0, /* src_mask */
77 1.1 christos 0, /* dst_mask */
78 1.1 christos FALSE), /* pcrel_offset */
79 1.1 christos
80 1.1 christos /* A 8 bit absolute relocation */
81 1.1 christos HOWTO (R_M68HC11_8, /* type */
82 1.1 christos 0, /* rightshift */
83 1.1 christos 0, /* size (0 = byte, 1 = short, 2 = long) */
84 1.1 christos 8, /* bitsize */
85 1.1 christos FALSE, /* pc_relative */
86 1.1 christos 0, /* bitpos */
87 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
88 1.1 christos bfd_elf_generic_reloc, /* special_function */
89 1.1 christos "R_M68HC11_8", /* name */
90 1.1 christos FALSE, /* partial_inplace */
91 1.1 christos 0x00ff, /* src_mask */
92 1.1 christos 0x00ff, /* dst_mask */
93 1.1 christos FALSE), /* pcrel_offset */
94 1.1 christos
95 1.1 christos /* A 8 bit absolute relocation (upper address) */
96 1.1 christos HOWTO (R_M68HC11_HI8, /* type */
97 1.1 christos 8, /* rightshift */
98 1.1 christos 0, /* size (0 = byte, 1 = short, 2 = long) */
99 1.1 christos 8, /* bitsize */
100 1.1 christos FALSE, /* pc_relative */
101 1.1 christos 0, /* bitpos */
102 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
103 1.1 christos bfd_elf_generic_reloc, /* special_function */
104 1.1 christos "R_M68HC11_HI8", /* name */
105 1.1 christos FALSE, /* partial_inplace */
106 1.1 christos 0x00ff, /* src_mask */
107 1.1 christos 0x00ff, /* dst_mask */
108 1.1 christos FALSE), /* pcrel_offset */
109 1.1 christos
110 1.1 christos /* A 8 bit absolute relocation (upper address) */
111 1.1 christos HOWTO (R_M68HC11_LO8, /* type */
112 1.1 christos 0, /* rightshift */
113 1.1 christos 0, /* size (0 = byte, 1 = short, 2 = long) */
114 1.1 christos 8, /* bitsize */
115 1.1 christos FALSE, /* pc_relative */
116 1.1 christos 0, /* bitpos */
117 1.1 christos complain_overflow_dont, /* complain_on_overflow */
118 1.1 christos bfd_elf_generic_reloc, /* special_function */
119 1.1 christos "R_M68HC11_LO8", /* name */
120 1.1 christos FALSE, /* partial_inplace */
121 1.1 christos 0x00ff, /* src_mask */
122 1.1 christos 0x00ff, /* dst_mask */
123 1.1 christos FALSE), /* pcrel_offset */
124 1.1 christos
125 1.1 christos /* A 8 bit PC-rel relocation */
126 1.1 christos HOWTO (R_M68HC11_PCREL_8, /* type */
127 1.1 christos 0, /* rightshift */
128 1.1 christos 0, /* size (0 = byte, 1 = short, 2 = long) */
129 1.1 christos 8, /* bitsize */
130 1.1 christos TRUE, /* pc_relative */
131 1.1 christos 0, /* bitpos */
132 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
133 1.1 christos bfd_elf_generic_reloc, /* special_function */
134 1.1 christos "R_M68HC11_PCREL_8", /* name */
135 1.1 christos FALSE, /* partial_inplace */
136 1.1 christos 0x00ff, /* src_mask */
137 1.1 christos 0x00ff, /* dst_mask */
138 1.1 christos TRUE), /* pcrel_offset */
139 1.1 christos
140 1.1 christos /* A 16 bit absolute relocation */
141 1.1 christos HOWTO (R_M68HC11_16, /* type */
142 1.1 christos 0, /* rightshift */
143 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
144 1.1 christos 16, /* bitsize */
145 1.1 christos FALSE, /* pc_relative */
146 1.1 christos 0, /* bitpos */
147 1.1 christos complain_overflow_dont /*bitfield */ , /* complain_on_overflow */
148 1.1 christos bfd_elf_generic_reloc, /* special_function */
149 1.1 christos "R_M68HC11_16", /* name */
150 1.1 christos FALSE, /* partial_inplace */
151 1.1 christos 0xffff, /* src_mask */
152 1.1 christos 0xffff, /* dst_mask */
153 1.1 christos FALSE), /* pcrel_offset */
154 1.1 christos
155 1.1 christos /* A 32 bit absolute relocation. This one is never used for the
156 1.1 christos code relocation. It's used by gas for -gstabs generation. */
157 1.1 christos HOWTO (R_M68HC11_32, /* type */
158 1.1 christos 0, /* rightshift */
159 1.1 christos 2, /* size (0 = byte, 1 = short, 2 = long) */
160 1.1 christos 32, /* bitsize */
161 1.1 christos FALSE, /* pc_relative */
162 1.1 christos 0, /* bitpos */
163 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
164 1.1 christos bfd_elf_generic_reloc, /* special_function */
165 1.1 christos "R_M68HC11_32", /* name */
166 1.1 christos FALSE, /* partial_inplace */
167 1.1 christos 0xffffffff, /* src_mask */
168 1.1 christos 0xffffffff, /* dst_mask */
169 1.1 christos FALSE), /* pcrel_offset */
170 1.1 christos
171 1.1 christos /* A 3 bit absolute relocation */
172 1.1 christos HOWTO (R_M68HC11_3B, /* type */
173 1.1 christos 0, /* rightshift */
174 1.1 christos 0, /* size (0 = byte, 1 = short, 2 = long) */
175 1.1 christos 3, /* bitsize */
176 1.1 christos FALSE, /* pc_relative */
177 1.1 christos 0, /* bitpos */
178 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
179 1.1 christos bfd_elf_generic_reloc, /* special_function */
180 1.1 christos "R_M68HC11_4B", /* name */
181 1.1 christos FALSE, /* partial_inplace */
182 1.1 christos 0x003, /* src_mask */
183 1.1 christos 0x003, /* dst_mask */
184 1.1 christos FALSE), /* pcrel_offset */
185 1.1 christos
186 1.1 christos /* A 16 bit PC-rel relocation */
187 1.1 christos HOWTO (R_M68HC11_PCREL_16, /* type */
188 1.1 christos 0, /* rightshift */
189 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
190 1.1 christos 16, /* bitsize */
191 1.1 christos TRUE, /* pc_relative */
192 1.1 christos 0, /* bitpos */
193 1.1 christos complain_overflow_dont, /* complain_on_overflow */
194 1.1 christos bfd_elf_generic_reloc, /* special_function */
195 1.1 christos "R_M68HC11_PCREL_16", /* name */
196 1.1 christos FALSE, /* partial_inplace */
197 1.1 christos 0xffff, /* src_mask */
198 1.1 christos 0xffff, /* dst_mask */
199 1.1 christos TRUE), /* pcrel_offset */
200 1.1 christos
201 1.1 christos /* GNU extension to record C++ vtable hierarchy */
202 1.1 christos HOWTO (R_M68HC11_GNU_VTINHERIT, /* type */
203 1.1 christos 0, /* rightshift */
204 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
205 1.1 christos 0, /* bitsize */
206 1.1 christos FALSE, /* pc_relative */
207 1.1 christos 0, /* bitpos */
208 1.1 christos complain_overflow_dont, /* complain_on_overflow */
209 1.1 christos NULL, /* special_function */
210 1.1 christos "R_M68HC11_GNU_VTINHERIT", /* name */
211 1.1 christos FALSE, /* partial_inplace */
212 1.1 christos 0, /* src_mask */
213 1.1 christos 0, /* dst_mask */
214 1.1 christos FALSE), /* pcrel_offset */
215 1.1 christos
216 1.1 christos /* GNU extension to record C++ vtable member usage */
217 1.1 christos HOWTO (R_M68HC11_GNU_VTENTRY, /* type */
218 1.1 christos 0, /* rightshift */
219 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
220 1.1 christos 0, /* bitsize */
221 1.1 christos FALSE, /* pc_relative */
222 1.1 christos 0, /* bitpos */
223 1.1 christos complain_overflow_dont, /* complain_on_overflow */
224 1.1 christos _bfd_elf_rel_vtable_reloc_fn, /* special_function */
225 1.1 christos "R_M68HC11_GNU_VTENTRY", /* name */
226 1.1 christos FALSE, /* partial_inplace */
227 1.1 christos 0, /* src_mask */
228 1.1 christos 0, /* dst_mask */
229 1.1 christos FALSE), /* pcrel_offset */
230 1.1 christos
231 1.1 christos /* A 24 bit relocation */
232 1.1 christos HOWTO (R_M68HC11_24, /* type */
233 1.1 christos 0, /* rightshift */
234 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
235 1.1 christos 24, /* bitsize */
236 1.1 christos FALSE, /* pc_relative */
237 1.1 christos 0, /* bitpos */
238 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
239 1.1 christos bfd_elf_generic_reloc, /* special_function */
240 1.1 christos "R_M68HC11_24", /* name */
241 1.1 christos FALSE, /* partial_inplace */
242 1.1 christos 0xffffff, /* src_mask */
243 1.1 christos 0xffffff, /* dst_mask */
244 1.1 christos FALSE), /* pcrel_offset */
245 1.1 christos
246 1.1 christos /* A 16-bit low relocation */
247 1.1 christos HOWTO (R_M68HC11_LO16, /* type */
248 1.1 christos 0, /* rightshift */
249 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
250 1.1 christos 16, /* bitsize */
251 1.1 christos FALSE, /* pc_relative */
252 1.1 christos 0, /* bitpos */
253 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
254 1.1 christos bfd_elf_generic_reloc, /* special_function */
255 1.1 christos "R_M68HC11_LO16", /* name */
256 1.1 christos FALSE, /* partial_inplace */
257 1.1 christos 0xffff, /* src_mask */
258 1.1 christos 0xffff, /* dst_mask */
259 1.1 christos FALSE), /* pcrel_offset */
260 1.1 christos
261 1.1 christos /* A page relocation */
262 1.1 christos HOWTO (R_M68HC11_PAGE, /* type */
263 1.1 christos 0, /* rightshift */
264 1.1 christos 0, /* size (0 = byte, 1 = short, 2 = long) */
265 1.1 christos 8, /* bitsize */
266 1.1 christos FALSE, /* pc_relative */
267 1.1 christos 0, /* bitpos */
268 1.1 christos complain_overflow_bitfield, /* complain_on_overflow */
269 1.1 christos bfd_elf_generic_reloc, /* special_function */
270 1.1 christos "R_M68HC11_PAGE", /* name */
271 1.1 christos FALSE, /* partial_inplace */
272 1.1 christos 0x00ff, /* src_mask */
273 1.1 christos 0x00ff, /* dst_mask */
274 1.1 christos FALSE), /* pcrel_offset */
275 1.1 christos
276 1.1 christos EMPTY_HOWTO (14),
277 1.1 christos EMPTY_HOWTO (15),
278 1.1 christos EMPTY_HOWTO (16),
279 1.1 christos EMPTY_HOWTO (17),
280 1.1 christos EMPTY_HOWTO (18),
281 1.1 christos EMPTY_HOWTO (19),
282 1.1 christos
283 1.1 christos /* Mark beginning of a jump instruction (any form). */
284 1.1 christos HOWTO (R_M68HC11_RL_JUMP, /* type */
285 1.1 christos 0, /* rightshift */
286 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
287 1.1 christos 0, /* bitsize */
288 1.1 christos FALSE, /* pc_relative */
289 1.1 christos 0, /* bitpos */
290 1.1 christos complain_overflow_dont, /* complain_on_overflow */
291 1.1 christos m68hc11_elf_ignore_reloc, /* special_function */
292 1.1 christos "R_M68HC11_RL_JUMP", /* name */
293 1.1 christos TRUE, /* partial_inplace */
294 1.1 christos 0, /* src_mask */
295 1.1 christos 0, /* dst_mask */
296 1.1 christos TRUE), /* pcrel_offset */
297 1.1 christos
298 1.1 christos /* Mark beginning of Gcc relaxation group instruction. */
299 1.1 christos HOWTO (R_M68HC11_RL_GROUP, /* type */
300 1.1 christos 0, /* rightshift */
301 1.1 christos 1, /* size (0 = byte, 1 = short, 2 = long) */
302 1.1 christos 0, /* bitsize */
303 1.1 christos FALSE, /* pc_relative */
304 1.1 christos 0, /* bitpos */
305 1.1 christos complain_overflow_dont, /* complain_on_overflow */
306 1.1 christos m68hc11_elf_ignore_reloc, /* special_function */
307 1.1 christos "R_M68HC11_RL_GROUP", /* name */
308 1.1 christos TRUE, /* partial_inplace */
309 1.1 christos 0, /* src_mask */
310 1.1 christos 0, /* dst_mask */
311 1.1 christos TRUE), /* pcrel_offset */
312 1.1 christos };
313 1.1 christos
314 1.1 christos /* Map BFD reloc types to M68HC11 ELF reloc types. */
315 1.1 christos
316 1.1 christos struct m68hc11_reloc_map
317 1.1 christos {
318 1.1 christos bfd_reloc_code_real_type bfd_reloc_val;
319 1.1 christos unsigned char elf_reloc_val;
320 1.1 christos };
321 1.1 christos
322 1.1 christos static const struct m68hc11_reloc_map m68hc11_reloc_map[] = {
323 1.1 christos {BFD_RELOC_NONE, R_M68HC11_NONE,},
324 1.1 christos {BFD_RELOC_8, R_M68HC11_8},
325 1.1 christos {BFD_RELOC_M68HC11_HI8, R_M68HC11_HI8},
326 1.1 christos {BFD_RELOC_M68HC11_LO8, R_M68HC11_LO8},
327 1.1 christos {BFD_RELOC_8_PCREL, R_M68HC11_PCREL_8},
328 1.1 christos {BFD_RELOC_16_PCREL, R_M68HC11_PCREL_16},
329 1.1 christos {BFD_RELOC_16, R_M68HC11_16},
330 1.1 christos {BFD_RELOC_32, R_M68HC11_32},
331 1.1 christos {BFD_RELOC_M68HC11_3B, R_M68HC11_3B},
332 1.1 christos
333 1.1 christos {BFD_RELOC_VTABLE_INHERIT, R_M68HC11_GNU_VTINHERIT},
334 1.1 christos {BFD_RELOC_VTABLE_ENTRY, R_M68HC11_GNU_VTENTRY},
335 1.1 christos
336 1.1 christos {BFD_RELOC_M68HC11_LO16, R_M68HC11_LO16},
337 1.1 christos {BFD_RELOC_M68HC11_PAGE, R_M68HC11_PAGE},
338 1.1 christos {BFD_RELOC_M68HC11_24, R_M68HC11_24},
339 1.1 christos
340 1.1 christos {BFD_RELOC_M68HC11_RL_JUMP, R_M68HC11_RL_JUMP},
341 1.1 christos {BFD_RELOC_M68HC11_RL_GROUP, R_M68HC11_RL_GROUP},
342 1.1 christos };
343 1.1 christos
344 1.1 christos static reloc_howto_type *
345 1.1 christos bfd_elf32_bfd_reloc_type_lookup (bfd *abfd ATTRIBUTE_UNUSED,
346 1.1 christos bfd_reloc_code_real_type code)
347 1.1 christos {
348 1.1 christos unsigned int i;
349 1.1 christos
350 1.1 christos for (i = 0;
351 1.1 christos i < sizeof (m68hc11_reloc_map) / sizeof (struct m68hc11_reloc_map);
352 1.1 christos i++)
353 1.1 christos {
354 1.1 christos if (m68hc11_reloc_map[i].bfd_reloc_val == code)
355 1.1 christos return &elf_m68hc11_howto_table[m68hc11_reloc_map[i].elf_reloc_val];
356 1.1 christos }
357 1.1 christos
358 1.1 christos return NULL;
359 1.1 christos }
360 1.1 christos
361 1.1 christos static reloc_howto_type *
362 1.1 christos bfd_elf32_bfd_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED,
363 1.1 christos const char *r_name)
364 1.1 christos {
365 1.1 christos unsigned int i;
366 1.1 christos
367 1.1 christos for (i = 0;
368 1.1 christos i < (sizeof (elf_m68hc11_howto_table)
369 1.1 christos / sizeof (elf_m68hc11_howto_table[0]));
370 1.1 christos i++)
371 1.1 christos if (elf_m68hc11_howto_table[i].name != NULL
372 1.1 christos && strcasecmp (elf_m68hc11_howto_table[i].name, r_name) == 0)
373 1.1 christos return &elf_m68hc11_howto_table[i];
374 1.1 christos
375 1.1 christos return NULL;
376 1.1 christos }
377 1.1 christos
378 1.1 christos /* Set the howto pointer for an M68HC11 ELF reloc. */
379 1.1 christos
380 1.1 christos static void
381 1.1 christos m68hc11_info_to_howto_rel (bfd *abfd ATTRIBUTE_UNUSED,
382 1.1 christos arelent *cache_ptr, Elf_Internal_Rela *dst)
383 1.1 christos {
384 1.1 christos unsigned int r_type;
385 1.1 christos
386 1.1 christos r_type = ELF32_R_TYPE (dst->r_info);
387 1.1.1.2 christos if (r_type >= (unsigned int) R_M68HC11_max)
388 1.1.1.2 christos {
389 1.1.1.5 christos /* xgettext:c-format */
390 1.1.1.3 christos _bfd_error_handler (_("%B: invalid M68HC11 reloc number: %d"), abfd, r_type);
391 1.1.1.2 christos r_type = 0;
392 1.1.1.2 christos }
393 1.1 christos cache_ptr->howto = &elf_m68hc11_howto_table[r_type];
394 1.1 christos }
395 1.1 christos
396 1.1 christos
397 1.1 christos /* Far trampoline generation. */
399 1.1 christos
400 1.1 christos /* Build a 68HC11 trampoline stub. */
401 1.1 christos static bfd_boolean
402 1.1 christos m68hc11_elf_build_one_stub (struct bfd_hash_entry *gen_entry, void *in_arg)
403 1.1 christos {
404 1.1 christos struct elf32_m68hc11_stub_hash_entry *stub_entry;
405 1.1 christos struct bfd_link_info *info;
406 1.1 christos struct m68hc11_elf_link_hash_table *htab;
407 1.1 christos asection *stub_sec;
408 1.1 christos bfd *stub_bfd;
409 1.1 christos bfd_byte *loc;
410 1.1 christos bfd_vma sym_value, phys_page, phys_addr;
411 1.1 christos
412 1.1 christos /* Massage our args to the form they really have. */
413 1.1 christos stub_entry = (struct elf32_m68hc11_stub_hash_entry *) gen_entry;
414 1.1 christos info = (struct bfd_link_info *) in_arg;
415 1.1 christos
416 1.1 christos htab = m68hc11_elf_hash_table (info);
417 1.1 christos if (htab == NULL)
418 1.1 christos return FALSE;
419 1.1 christos
420 1.1 christos stub_sec = stub_entry->stub_sec;
421 1.1 christos
422 1.1 christos /* Make a note of the offset within the stubs for this entry. */
423 1.1 christos stub_entry->stub_offset = stub_sec->size;
424 1.1 christos stub_sec->size += 10;
425 1.1 christos loc = stub_sec->contents + stub_entry->stub_offset;
426 1.1 christos
427 1.1 christos stub_bfd = stub_sec->owner;
428 1.1 christos
429 1.1 christos /* Create the trampoline call stub:
430 1.1 christos
431 1.1 christos pshb
432 1.1 christos ldab #%page(symbol)
433 1.1 christos ldy #%addr(symbol)
434 1.1 christos jmp __trampoline
435 1.1 christos
436 1.1 christos */
437 1.1 christos sym_value = (stub_entry->target_value
438 1.1 christos + stub_entry->target_section->output_offset
439 1.1 christos + stub_entry->target_section->output_section->vma);
440 1.1 christos phys_addr = m68hc11_phys_addr (&htab->pinfo, sym_value);
441 1.1 christos phys_page = m68hc11_phys_page (&htab->pinfo, sym_value);
442 1.1 christos
443 1.1 christos /* pshb; ldab #%page(sym) */
444 1.1 christos bfd_put_8 (stub_bfd, 0x37, loc);
445 1.1 christos bfd_put_8 (stub_bfd, 0xC6, loc + 1);
446 1.1 christos bfd_put_8 (stub_bfd, phys_page, loc + 2);
447 1.1 christos loc += 3;
448 1.1 christos
449 1.1 christos /* ldy #%addr(sym) */
450 1.1 christos bfd_put_8 (stub_bfd, 0x18, loc);
451 1.1 christos bfd_put_8 (stub_bfd, 0xCE, loc + 1);
452 1.1 christos bfd_put_16 (stub_bfd, phys_addr, loc + 2);
453 1.1 christos loc += 4;
454 1.1 christos
455 1.1 christos /* jmp __trampoline */
456 1.1 christos bfd_put_8 (stub_bfd, 0x7E, loc);
457 1.1 christos bfd_put_16 (stub_bfd, htab->pinfo.trampoline_addr, loc + 1);
458 1.1 christos
459 1.1 christos return TRUE;
460 1.1 christos }
461 1.1 christos
462 1.1 christos /* As above, but don't actually build the stub. Just bump offset so
463 1.1 christos we know stub section sizes. */
464 1.1 christos
465 1.1 christos static bfd_boolean
466 1.1 christos m68hc11_elf_size_one_stub (struct bfd_hash_entry *gen_entry,
467 1.1 christos void *in_arg ATTRIBUTE_UNUSED)
468 1.1 christos {
469 1.1 christos struct elf32_m68hc11_stub_hash_entry *stub_entry;
470 1.1 christos
471 1.1 christos /* Massage our args to the form they really have. */
472 1.1 christos stub_entry = (struct elf32_m68hc11_stub_hash_entry *) gen_entry;
473 1.1 christos
474 1.1 christos stub_entry->stub_sec->size += 10;
475 1.1 christos return TRUE;
476 1.1 christos }
477 1.1 christos
478 1.1 christos /* Create a 68HC11 ELF linker hash table. */
479 1.1 christos
480 1.1 christos static struct bfd_link_hash_table *
481 1.1 christos m68hc11_elf_bfd_link_hash_table_create (bfd *abfd)
482 1.1 christos {
483 1.1 christos struct m68hc11_elf_link_hash_table *ret;
484 1.1 christos
485 1.1 christos ret = m68hc11_elf_hash_table_create (abfd);
486 1.1 christos if (ret == (struct m68hc11_elf_link_hash_table *) NULL)
487 1.1 christos return NULL;
488 1.1 christos
489 1.1 christos ret->size_one_stub = m68hc11_elf_size_one_stub;
490 1.1 christos ret->build_one_stub = m68hc11_elf_build_one_stub;
491 1.1 christos
492 1.1 christos return &ret->root.root;
493 1.1 christos }
494 1.1 christos
495 1.1 christos
496 1.1 christos /* 68HC11 Linker Relaxation. */
498 1.1 christos
499 1.1 christos struct m68hc11_direct_relax
500 1.1 christos {
501 1.1 christos const char *name;
502 1.1 christos unsigned char code;
503 1.1 christos unsigned char direct_code;
504 1.1 christos } m68hc11_direct_relax_table[] = {
505 1.1 christos { "adca", 0xB9, 0x99 },
506 1.1 christos { "adcb", 0xF9, 0xD9 },
507 1.1 christos { "adda", 0xBB, 0x9B },
508 1.1 christos { "addb", 0xFB, 0xDB },
509 1.1 christos { "addd", 0xF3, 0xD3 },
510 1.1 christos { "anda", 0xB4, 0x94 },
511 1.1 christos { "andb", 0xF4, 0xD4 },
512 1.1 christos { "cmpa", 0xB1, 0x91 },
513 1.1 christos { "cmpb", 0xF1, 0xD1 },
514 1.1 christos { "cpd", 0xB3, 0x93 },
515 1.1 christos { "cpxy", 0xBC, 0x9C },
516 1.1 christos /* { "cpy", 0xBC, 0x9C }, */
517 1.1 christos { "eora", 0xB8, 0x98 },
518 1.1 christos { "eorb", 0xF8, 0xD8 },
519 1.1 christos { "jsr", 0xBD, 0x9D },
520 1.1 christos { "ldaa", 0xB6, 0x96 },
521 1.1 christos { "ldab", 0xF6, 0xD6 },
522 1.1 christos { "ldd", 0xFC, 0xDC },
523 1.1 christos { "lds", 0xBE, 0x9E },
524 1.1 christos { "ldxy", 0xFE, 0xDE },
525 1.1 christos /* { "ldy", 0xFE, 0xDE },*/
526 1.1 christos { "oraa", 0xBA, 0x9A },
527 1.1 christos { "orab", 0xFA, 0xDA },
528 1.1 christos { "sbca", 0xB2, 0x92 },
529 1.1 christos { "sbcb", 0xF2, 0xD2 },
530 1.1 christos { "staa", 0xB7, 0x97 },
531 1.1 christos { "stab", 0xF7, 0xD7 },
532 1.1 christos { "std", 0xFD, 0xDD },
533 1.1 christos { "sts", 0xBF, 0x9F },
534 1.1 christos { "stxy", 0xFF, 0xDF },
535 1.1 christos /* { "sty", 0xFF, 0xDF },*/
536 1.1 christos { "suba", 0xB0, 0x90 },
537 1.1 christos { "subb", 0xF0, 0xD0 },
538 1.1 christos { "subd", 0xB3, 0x93 },
539 1.1 christos { 0, 0, 0 }
540 1.1 christos };
541 1.1 christos
542 1.1 christos static struct m68hc11_direct_relax *
543 1.1 christos find_relaxable_insn (unsigned char code)
544 1.1 christos {
545 1.1 christos int i;
546 1.1 christos
547 1.1 christos for (i = 0; m68hc11_direct_relax_table[i].name; i++)
548 1.1 christos if (m68hc11_direct_relax_table[i].code == code)
549 1.1 christos return &m68hc11_direct_relax_table[i];
550 1.1 christos
551 1.1 christos return 0;
552 1.1 christos }
553 1.1 christos
554 1.1 christos static int
555 1.1 christos compare_reloc (const void *e1, const void *e2)
556 1.1 christos {
557 1.1 christos const Elf_Internal_Rela *i1 = (const Elf_Internal_Rela *) e1;
558 1.1 christos const Elf_Internal_Rela *i2 = (const Elf_Internal_Rela *) e2;
559 1.1 christos
560 1.1 christos if (i1->r_offset == i2->r_offset)
561 1.1 christos return 0;
562 1.1 christos else
563 1.1 christos return i1->r_offset < i2->r_offset ? -1 : 1;
564 1.1 christos }
565 1.1 christos
566 1.1 christos #define M6811_OP_LDX_IMMEDIATE (0xCE)
567 1.1 christos
568 1.1 christos static void
569 1.1 christos m68hc11_relax_group (bfd *abfd, asection *sec, bfd_byte *contents,
570 1.1 christos unsigned value, unsigned long offset,
571 1.1 christos unsigned long end_group)
572 1.1 christos {
573 1.1 christos unsigned char code;
574 1.1 christos unsigned long start_offset;
575 1.1 christos unsigned long ldx_offset = offset;
576 1.1 christos unsigned long ldx_size;
577 1.1 christos int can_delete_ldx;
578 1.1 christos int relax_ldy = 0;
579 1.1 christos
580 1.1 christos /* First instruction of the relax group must be a
581 1.1 christos LDX #value or LDY #value. If this is not the case,
582 1.1 christos ignore the relax group. */
583 1.1 christos code = bfd_get_8 (abfd, contents + offset);
584 1.1 christos if (code == 0x18)
585 1.1 christos {
586 1.1 christos relax_ldy++;
587 1.1 christos offset++;
588 1.1 christos code = bfd_get_8 (abfd, contents + offset);
589 1.1 christos }
590 1.1 christos ldx_size = offset - ldx_offset + 3;
591 1.1 christos offset += 3;
592 1.1 christos if (code != M6811_OP_LDX_IMMEDIATE || offset >= end_group)
593 1.1 christos return;
594 1.1 christos
595 1.1 christos
596 1.1 christos /* We can remove the LDX/LDY only when all bset/brclr instructions
597 1.1 christos of the relax group have been converted to use direct addressing
598 1.1 christos mode. */
599 1.1 christos can_delete_ldx = 1;
600 1.1 christos while (offset < end_group)
601 1.1 christos {
602 1.1 christos unsigned isize;
603 1.1 christos unsigned new_value;
604 1.1 christos int bset_use_y;
605 1.1 christos
606 1.1 christos bset_use_y = 0;
607 1.1 christos start_offset = offset;
608 1.1 christos code = bfd_get_8 (abfd, contents + offset);
609 1.1 christos if (code == 0x18)
610 1.1 christos {
611 1.1 christos bset_use_y++;
612 1.1 christos offset++;
613 1.1 christos code = bfd_get_8 (abfd, contents + offset);
614 1.1 christos }
615 1.1 christos
616 1.1 christos /* Check the instruction and translate to use direct addressing mode. */
617 1.1 christos switch (code)
618 1.1 christos {
619 1.1 christos /* bset */
620 1.1 christos case 0x1C:
621 1.1 christos code = 0x14;
622 1.1 christos isize = 3;
623 1.1 christos break;
624 1.1 christos
625 1.1 christos /* brclr */
626 1.1 christos case 0x1F:
627 1.1 christos code = 0x13;
628 1.1 christos isize = 4;
629 1.1 christos break;
630 1.1 christos
631 1.1 christos /* brset */
632 1.1 christos case 0x1E:
633 1.1 christos code = 0x12;
634 1.1 christos isize = 4;
635 1.1 christos break;
636 1.1 christos
637 1.1 christos /* bclr */
638 1.1 christos case 0x1D:
639 1.1 christos code = 0x15;
640 1.1 christos isize = 3;
641 1.1 christos break;
642 1.1 christos
643 1.1 christos /* This instruction is not recognized and we are not
644 1.1 christos at end of the relax group. Ignore and don't remove
645 1.1 christos the first LDX (we don't know what it is used for...). */
646 1.1 christos default:
647 1.1 christos return;
648 1.1 christos }
649 1.1 christos new_value = (unsigned) bfd_get_8 (abfd, contents + offset + 1);
650 1.1 christos new_value += value;
651 1.1 christos if ((new_value & 0xff00) == 0 && bset_use_y == relax_ldy)
652 1.1 christos {
653 1.1 christos bfd_put_8 (abfd, code, contents + offset);
654 1.1 christos bfd_put_8 (abfd, new_value, contents + offset + 1);
655 1.1 christos if (start_offset != offset)
656 1.1 christos {
657 1.1 christos m68hc11_elf_relax_delete_bytes (abfd, sec, start_offset,
658 1.1 christos offset - start_offset);
659 1.1 christos end_group--;
660 1.1 christos }
661 1.1 christos }
662 1.1 christos else
663 1.1 christos {
664 1.1 christos can_delete_ldx = 0;
665 1.1 christos }
666 1.1 christos offset = start_offset + isize;
667 1.1 christos }
668 1.1 christos if (can_delete_ldx)
669 1.1 christos {
670 1.1 christos /* Remove the move instruction (3 or 4 bytes win). */
671 1.1 christos m68hc11_elf_relax_delete_bytes (abfd, sec, ldx_offset, ldx_size);
672 1.1 christos }
673 1.1 christos }
674 1.1 christos
675 1.1 christos /* This function handles relaxing for the 68HC11.
676 1.1 christos
677 1.1 christos
678 1.1 christos and somewhat more difficult to support. */
679 1.1 christos
680 1.1 christos static bfd_boolean
681 1.1 christos m68hc11_elf_relax_section (bfd *abfd, asection *sec,
682 1.1 christos struct bfd_link_info *link_info, bfd_boolean *again)
683 1.1 christos {
684 1.1 christos Elf_Internal_Shdr *symtab_hdr;
685 1.1 christos Elf_Internal_Rela *internal_relocs;
686 1.1 christos Elf_Internal_Rela *free_relocs = NULL;
687 1.1 christos Elf_Internal_Rela *irel, *irelend;
688 1.1 christos bfd_byte *contents = NULL;
689 1.1 christos bfd_byte *free_contents = NULL;
690 1.1 christos Elf32_External_Sym *free_extsyms = NULL;
691 1.1 christos Elf_Internal_Rela *prev_insn_branch = NULL;
692 1.1 christos Elf_Internal_Rela *prev_insn_group = NULL;
693 1.1 christos unsigned insn_group_value = 0;
694 1.1 christos Elf_Internal_Sym *isymbuf = NULL;
695 1.1 christos
696 1.1 christos /* Assume nothing changes. */
697 1.1 christos *again = FALSE;
698 1.1 christos
699 1.1 christos /* We don't have to do anything for a relocatable link, if
700 1.1.1.4 christos this section does not have relocs, or if this is not a
701 1.1 christos code section. */
702 1.1 christos if (bfd_link_relocatable (link_info)
703 1.1 christos || (sec->flags & SEC_RELOC) == 0
704 1.1 christos || sec->reloc_count == 0
705 1.1 christos || (sec->flags & SEC_CODE) == 0)
706 1.1 christos return TRUE;
707 1.1 christos
708 1.1 christos symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
709 1.1 christos
710 1.1 christos /* Get a copy of the native relocations. */
711 1.1 christos internal_relocs = (_bfd_elf_link_read_relocs
712 1.1 christos (abfd, sec, NULL, (Elf_Internal_Rela *) NULL,
713 1.1 christos link_info->keep_memory));
714 1.1 christos if (internal_relocs == NULL)
715 1.1 christos goto error_return;
716 1.1 christos if (! link_info->keep_memory)
717 1.1 christos free_relocs = internal_relocs;
718 1.1 christos
719 1.1 christos /* Checking for branch relaxation relies on the relocations to
720 1.1 christos be sorted on 'r_offset'. This is not guaranteed so we must sort. */
721 1.1 christos qsort (internal_relocs, sec->reloc_count, sizeof (Elf_Internal_Rela),
722 1.1 christos compare_reloc);
723 1.1 christos
724 1.1 christos /* Walk through them looking for relaxing opportunities. */
725 1.1 christos irelend = internal_relocs + sec->reloc_count;
726 1.1 christos for (irel = internal_relocs; irel < irelend; irel++)
727 1.1 christos {
728 1.1 christos bfd_vma symval;
729 1.1 christos bfd_vma value;
730 1.1 christos Elf_Internal_Sym *isym;
731 1.1 christos asection *sym_sec;
732 1.1 christos int is_far = 0;
733 1.1 christos
734 1.1 christos /* If this isn't something that can be relaxed, then ignore
735 1.1 christos this reloc. */
736 1.1 christos if (ELF32_R_TYPE (irel->r_info) != (int) R_M68HC11_16
737 1.1 christos && ELF32_R_TYPE (irel->r_info) != (int) R_M68HC11_RL_JUMP
738 1.1 christos && ELF32_R_TYPE (irel->r_info) != (int) R_M68HC11_RL_GROUP)
739 1.1 christos {
740 1.1 christos prev_insn_branch = 0;
741 1.1 christos prev_insn_group = 0;
742 1.1 christos continue;
743 1.1 christos }
744 1.1 christos
745 1.1 christos /* Get the section contents if we haven't done so already. */
746 1.1 christos if (contents == NULL)
747 1.1 christos {
748 1.1 christos /* Get cached copy if it exists. */
749 1.1 christos if (elf_section_data (sec)->this_hdr.contents != NULL)
750 1.1 christos contents = elf_section_data (sec)->this_hdr.contents;
751 1.1 christos else
752 1.1 christos {
753 1.1 christos /* Go get them off disk. */
754 1.1 christos if (!bfd_malloc_and_get_section (abfd, sec, &contents))
755 1.1 christos goto error_return;
756 1.1 christos }
757 1.1 christos }
758 1.1 christos
759 1.1 christos /* Try to eliminate an unconditional 8 bit pc-relative branch
760 1.1 christos which immediately follows a conditional 8 bit pc-relative
761 1.1 christos branch around the unconditional branch.
762 1.1 christos
763 1.1 christos original: new:
764 1.1 christos bCC lab1 bCC' lab2
765 1.1 christos bra lab2
766 1.1 christos lab1: lab1:
767 1.1 christos
768 1.1 christos This happens when the bCC can't reach lab2 at assembly time,
769 1.1 christos but due to other relaxations it can reach at link time. */
770 1.1 christos if (ELF32_R_TYPE (irel->r_info) == (int) R_M68HC11_RL_JUMP)
771 1.1 christos {
772 1.1 christos Elf_Internal_Rela *nrel;
773 1.1 christos unsigned char code;
774 1.1 christos unsigned char roffset;
775 1.1 christos
776 1.1 christos prev_insn_branch = 0;
777 1.1 christos prev_insn_group = 0;
778 1.1 christos
779 1.1 christos /* Do nothing if this reloc is the last byte in the section. */
780 1.1 christos if (irel->r_offset + 2 >= sec->size)
781 1.1 christos continue;
782 1.1 christos
783 1.1 christos /* See if the next instruction is an unconditional pc-relative
784 1.1 christos branch, more often than not this test will fail, so we
785 1.1 christos test it first to speed things up. */
786 1.1 christos code = bfd_get_8 (abfd, contents + irel->r_offset + 2);
787 1.1 christos if (code != 0x7e)
788 1.1 christos continue;
789 1.1 christos
790 1.1 christos /* Also make sure the next relocation applies to the next
791 1.1 christos instruction and that it's a pc-relative 8 bit branch. */
792 1.1 christos nrel = irel + 1;
793 1.1 christos if (nrel == irelend
794 1.1 christos || irel->r_offset + 3 != nrel->r_offset
795 1.1 christos || ELF32_R_TYPE (nrel->r_info) != (int) R_M68HC11_16)
796 1.1 christos continue;
797 1.1 christos
798 1.1 christos /* Make sure our destination immediately follows the
799 1.1 christos unconditional branch. */
800 1.1 christos roffset = bfd_get_8 (abfd, contents + irel->r_offset + 1);
801 1.1 christos if (roffset != 3)
802 1.1 christos continue;
803 1.1 christos
804 1.1 christos prev_insn_branch = irel;
805 1.1 christos prev_insn_group = 0;
806 1.1 christos continue;
807 1.1 christos }
808 1.1 christos
809 1.1 christos /* Read this BFD's symbols if we haven't done so already. */
810 1.1 christos if (isymbuf == NULL && symtab_hdr->sh_info != 0)
811 1.1 christos {
812 1.1 christos isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents;
813 1.1 christos if (isymbuf == NULL)
814 1.1 christos isymbuf = bfd_elf_get_elf_syms (abfd, symtab_hdr,
815 1.1 christos symtab_hdr->sh_info, 0,
816 1.1 christos NULL, NULL, NULL);
817 1.1 christos if (isymbuf == NULL)
818 1.1 christos goto error_return;
819 1.1 christos }
820 1.1 christos
821 1.1 christos /* Get the value of the symbol referred to by the reloc. */
822 1.1 christos if (ELF32_R_SYM (irel->r_info) < symtab_hdr->sh_info)
823 1.1 christos {
824 1.1 christos /* A local symbol. */
825 1.1 christos isym = isymbuf + ELF32_R_SYM (irel->r_info);
826 1.1 christos is_far = isym->st_other & STO_M68HC12_FAR;
827 1.1 christos sym_sec = bfd_section_from_elf_index (abfd, isym->st_shndx);
828 1.1 christos symval = (isym->st_value
829 1.1 christos + sym_sec->output_section->vma
830 1.1 christos + sym_sec->output_offset);
831 1.1 christos }
832 1.1 christos else
833 1.1 christos {
834 1.1 christos unsigned long indx;
835 1.1 christos struct elf_link_hash_entry *h;
836 1.1 christos
837 1.1 christos /* An external symbol. */
838 1.1 christos indx = ELF32_R_SYM (irel->r_info) - symtab_hdr->sh_info;
839 1.1 christos h = elf_sym_hashes (abfd)[indx];
840 1.1 christos BFD_ASSERT (h != NULL);
841 1.1 christos if (h->root.type != bfd_link_hash_defined
842 1.1 christos && h->root.type != bfd_link_hash_defweak)
843 1.1 christos {
844 1.1 christos /* This appears to be a reference to an undefined
845 1.1 christos symbol. Just ignore it--it will be caught by the
846 1.1 christos regular reloc processing. */
847 1.1 christos prev_insn_branch = 0;
848 1.1 christos prev_insn_group = 0;
849 1.1 christos continue;
850 1.1 christos }
851 1.1 christos
852 1.1 christos is_far = h->other & STO_M68HC12_FAR;
853 1.1 christos isym = 0;
854 1.1 christos sym_sec = h->root.u.def.section;
855 1.1 christos symval = (h->root.u.def.value
856 1.1 christos + sym_sec->output_section->vma
857 1.1 christos + sym_sec->output_offset);
858 1.1 christos }
859 1.1 christos
860 1.1 christos if (ELF32_R_TYPE (irel->r_info) == (int) R_M68HC11_RL_GROUP)
861 1.1 christos {
862 1.1 christos prev_insn_branch = 0;
863 1.1 christos prev_insn_group = 0;
864 1.1 christos
865 1.1 christos /* Do nothing if this reloc is the last byte in the section. */
866 1.1 christos if (irel->r_offset == sec->size)
867 1.1 christos continue;
868 1.1 christos
869 1.1 christos prev_insn_group = irel;
870 1.1 christos insn_group_value = isym->st_value;
871 1.1 christos continue;
872 1.1 christos }
873 1.1 christos
874 1.1 christos /* When we relax some bytes, the size of our section changes.
875 1.1 christos This affects the layout of next input sections that go in our
876 1.1 christos output section. When the symbol is part of another section that
877 1.1 christos will go in the same output section as the current one, it's
878 1.1 christos final address may now be incorrect (too far). We must let the
879 1.1 christos linker re-compute all section offsets before processing this
880 1.1 christos reloc. Code example:
881 1.1 christos
882 1.1 christos Initial Final
883 1.1 christos .sect .text section size = 6 section size = 4
884 1.1 christos jmp foo
885 1.1 christos jmp bar
886 1.1 christos .sect .text.foo_bar output_offset = 6 output_offset = 4
887 1.1 christos foo: rts
888 1.1 christos bar: rts
889 1.1 christos
890 1.1 christos If we process the reloc now, the jmp bar is replaced by a
891 1.1 christos relative branch to the initial bar address (output_offset 6). */
892 1.1 christos if (*again && sym_sec != sec
893 1.1 christos && sym_sec->output_section == sec->output_section)
894 1.1 christos {
895 1.1 christos prev_insn_group = 0;
896 1.1 christos prev_insn_branch = 0;
897 1.1 christos continue;
898 1.1 christos }
899 1.1 christos
900 1.1 christos value = symval;
901 1.1 christos /* Try to turn a far branch to a near branch. */
902 1.1 christos if (ELF32_R_TYPE (irel->r_info) == (int) R_M68HC11_16
903 1.1 christos && prev_insn_branch)
904 1.1 christos {
905 1.1 christos bfd_vma offset;
906 1.1 christos unsigned char code;
907 1.1 christos
908 1.1 christos offset = value - (prev_insn_branch->r_offset
909 1.1 christos + sec->output_section->vma
910 1.1 christos + sec->output_offset + 2);
911 1.1 christos
912 1.1 christos /* If the offset is still out of -128..+127 range,
913 1.1 christos leave that far branch unchanged. */
914 1.1 christos if ((offset & 0xff80) != 0 && (offset & 0xff80) != 0xff80)
915 1.1 christos {
916 1.1 christos prev_insn_branch = 0;
917 1.1 christos continue;
918 1.1 christos }
919 1.1 christos
920 1.1 christos /* Shrink the branch. */
921 1.1 christos code = bfd_get_8 (abfd, contents + prev_insn_branch->r_offset);
922 1.1 christos if (code == 0x7e)
923 1.1 christos {
924 1.1 christos code = 0x20;
925 1.1 christos bfd_put_8 (abfd, code, contents + prev_insn_branch->r_offset);
926 1.1 christos bfd_put_8 (abfd, 0xff,
927 1.1 christos contents + prev_insn_branch->r_offset + 1);
928 1.1 christos irel->r_offset = prev_insn_branch->r_offset + 1;
929 1.1 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info),
930 1.1 christos R_M68HC11_PCREL_8);
931 1.1 christos m68hc11_elf_relax_delete_bytes (abfd, sec,
932 1.1 christos irel->r_offset + 1, 1);
933 1.1 christos }
934 1.1 christos else
935 1.1 christos {
936 1.1 christos code ^= 0x1;
937 1.1 christos bfd_put_8 (abfd, code, contents + prev_insn_branch->r_offset);
938 1.1 christos bfd_put_8 (abfd, 0xff,
939 1.1 christos contents + prev_insn_branch->r_offset + 1);
940 1.1 christos irel->r_offset = prev_insn_branch->r_offset + 1;
941 1.1 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info),
942 1.1 christos R_M68HC11_PCREL_8);
943 1.1 christos m68hc11_elf_relax_delete_bytes (abfd, sec,
944 1.1 christos irel->r_offset + 1, 3);
945 1.1 christos }
946 1.1 christos prev_insn_branch = 0;
947 1.1 christos *again = TRUE;
948 1.1 christos }
949 1.1 christos
950 1.1 christos /* Try to turn a 16 bit address into a 8 bit page0 address. */
951 1.1 christos else if (ELF32_R_TYPE (irel->r_info) == (int) R_M68HC11_16
952 1.1 christos && (value & 0xff00) == 0)
953 1.1 christos {
954 1.1 christos unsigned char code;
955 1.1 christos unsigned short offset;
956 1.1 christos struct m68hc11_direct_relax *rinfo;
957 1.1 christos
958 1.1 christos prev_insn_branch = 0;
959 1.1 christos offset = bfd_get_16 (abfd, contents + irel->r_offset);
960 1.1 christos offset += value;
961 1.1 christos if ((offset & 0xff00) != 0)
962 1.1 christos {
963 1.1 christos prev_insn_group = 0;
964 1.1 christos continue;
965 1.1 christos }
966 1.1 christos
967 1.1 christos if (prev_insn_group)
968 1.1 christos {
969 1.1 christos unsigned long old_sec_size = sec->size;
970 1.1 christos
971 1.1 christos /* Note that we've changed the relocation contents, etc. */
972 1.1 christos elf_section_data (sec)->relocs = internal_relocs;
973 1.1 christos free_relocs = NULL;
974 1.1 christos
975 1.1 christos elf_section_data (sec)->this_hdr.contents = contents;
976 1.1 christos free_contents = NULL;
977 1.1 christos
978 1.1 christos symtab_hdr->contents = (bfd_byte *) isymbuf;
979 1.1 christos free_extsyms = NULL;
980 1.1 christos
981 1.1 christos m68hc11_relax_group (abfd, sec, contents, offset,
982 1.1 christos prev_insn_group->r_offset,
983 1.1 christos insn_group_value);
984 1.1 christos irel = prev_insn_group;
985 1.1 christos prev_insn_group = 0;
986 1.1 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info),
987 1.1 christos R_M68HC11_NONE);
988 1.1 christos if (sec->size != old_sec_size)
989 1.1 christos *again = TRUE;
990 1.1 christos continue;
991 1.1 christos }
992 1.1 christos
993 1.1 christos /* Get the opcode. */
994 1.1 christos code = bfd_get_8 (abfd, contents + irel->r_offset - 1);
995 1.1 christos rinfo = find_relaxable_insn (code);
996 1.1 christos if (rinfo == 0)
997 1.1 christos {
998 1.1 christos prev_insn_group = 0;
999 1.1 christos continue;
1000 1.1 christos }
1001 1.1 christos
1002 1.1 christos /* Note that we've changed the relocation contents, etc. */
1003 1.1 christos elf_section_data (sec)->relocs = internal_relocs;
1004 1.1 christos free_relocs = NULL;
1005 1.1 christos
1006 1.1 christos elf_section_data (sec)->this_hdr.contents = contents;
1007 1.1 christos free_contents = NULL;
1008 1.1 christos
1009 1.1 christos symtab_hdr->contents = (bfd_byte *) isymbuf;
1010 1.1 christos free_extsyms = NULL;
1011 1.1 christos
1012 1.1 christos /* Fix the opcode. */
1013 1.1 christos /* printf ("A relaxable case : 0x%02x (%s)\n",
1014 1.1 christos code, rinfo->name); */
1015 1.1 christos bfd_put_8 (abfd, rinfo->direct_code,
1016 1.1 christos contents + irel->r_offset - 1);
1017 1.1 christos
1018 1.1 christos /* Delete one byte of data (upper byte of address). */
1019 1.1 christos m68hc11_elf_relax_delete_bytes (abfd, sec, irel->r_offset, 1);
1020 1.1 christos
1021 1.1 christos /* Fix the relocation's type. */
1022 1.1 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info),
1023 1.1 christos R_M68HC11_8);
1024 1.1 christos
1025 1.1 christos /* That will change things, so, we should relax again. */
1026 1.1 christos *again = TRUE;
1027 1.1 christos }
1028 1.1 christos else if (ELF32_R_TYPE (irel->r_info) == R_M68HC11_16 && !is_far)
1029 1.1 christos {
1030 1.1 christos unsigned char code;
1031 1.1 christos bfd_vma offset;
1032 1.1 christos
1033 1.1 christos prev_insn_branch = 0;
1034 1.1 christos code = bfd_get_8 (abfd, contents + irel->r_offset - 1);
1035 1.1 christos if (code == 0x7e || code == 0xbd)
1036 1.1 christos {
1037 1.1 christos offset = value - (irel->r_offset
1038 1.1 christos + sec->output_section->vma
1039 1.1 christos + sec->output_offset + 1);
1040 1.1 christos offset += bfd_get_16 (abfd, contents + irel->r_offset);
1041 1.1 christos
1042 1.1 christos /* If the offset is still out of -128..+127 range,
1043 1.1 christos leave that far branch unchanged. */
1044 1.1 christos if ((offset & 0xff80) == 0 || (offset & 0xff80) == 0xff80)
1045 1.1 christos {
1046 1.1 christos
1047 1.1 christos /* Note that we've changed the relocation contents, etc. */
1048 1.1 christos elf_section_data (sec)->relocs = internal_relocs;
1049 1.1 christos free_relocs = NULL;
1050 1.1 christos
1051 1.1 christos elf_section_data (sec)->this_hdr.contents = contents;
1052 1.1 christos free_contents = NULL;
1053 1.1 christos
1054 1.1 christos symtab_hdr->contents = (bfd_byte *) isymbuf;
1055 1.1 christos free_extsyms = NULL;
1056 1.1 christos
1057 1.1 christos /* Shrink the branch. */
1058 1.1 christos code = (code == 0x7e) ? 0x20 : 0x8d;
1059 1.1 christos bfd_put_8 (abfd, code,
1060 1.1 christos contents + irel->r_offset - 1);
1061 1.1 christos bfd_put_8 (abfd, 0xff,
1062 1.1 christos contents + irel->r_offset);
1063 1.1 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info),
1064 1.1 christos R_M68HC11_PCREL_8);
1065 1.1 christos m68hc11_elf_relax_delete_bytes (abfd, sec,
1066 1.1 christos irel->r_offset + 1, 1);
1067 1.1 christos /* That will change things, so, we should relax again. */
1068 1.1 christos *again = TRUE;
1069 1.1 christos }
1070 1.1 christos }
1071 1.1 christos }
1072 1.1 christos prev_insn_branch = 0;
1073 1.1 christos prev_insn_group = 0;
1074 1.1 christos }
1075 1.1 christos
1076 1.1 christos if (free_relocs != NULL)
1077 1.1 christos {
1078 1.1 christos free (free_relocs);
1079 1.1 christos free_relocs = NULL;
1080 1.1 christos }
1081 1.1 christos
1082 1.1 christos if (free_contents != NULL)
1083 1.1 christos {
1084 1.1 christos if (! link_info->keep_memory)
1085 1.1 christos free (free_contents);
1086 1.1 christos else
1087 1.1 christos {
1088 1.1 christos /* Cache the section contents for elf_link_input_bfd. */
1089 1.1 christos elf_section_data (sec)->this_hdr.contents = contents;
1090 1.1 christos }
1091 1.1 christos free_contents = NULL;
1092 1.1 christos }
1093 1.1 christos
1094 1.1 christos if (free_extsyms != NULL)
1095 1.1 christos {
1096 1.1 christos if (! link_info->keep_memory)
1097 1.1 christos free (free_extsyms);
1098 1.1 christos else
1099 1.1 christos {
1100 1.1 christos /* Cache the symbols for elf_link_input_bfd. */
1101 1.1 christos symtab_hdr->contents = (unsigned char *) isymbuf;
1102 1.1 christos }
1103 1.1 christos free_extsyms = NULL;
1104 1.1 christos }
1105 1.1 christos
1106 1.1 christos return TRUE;
1107 1.1 christos
1108 1.1 christos error_return:
1109 1.1 christos if (free_relocs != NULL)
1110 1.1 christos free (free_relocs);
1111 1.1 christos if (free_contents != NULL)
1112 1.1 christos free (free_contents);
1113 1.1 christos if (free_extsyms != NULL)
1114 1.1 christos free (free_extsyms);
1115 1.1 christos return FALSE;
1116 1.1 christos }
1117 1.1 christos
1118 1.1 christos /* Delete some bytes from a section while relaxing. */
1119 1.1 christos
1120 1.1 christos static void
1121 1.1 christos m68hc11_elf_relax_delete_bytes (bfd *abfd, asection *sec,
1122 1.1 christos bfd_vma addr, int count)
1123 1.1 christos {
1124 1.1 christos Elf_Internal_Shdr *symtab_hdr;
1125 1.1 christos unsigned int sec_shndx;
1126 1.1 christos bfd_byte *contents;
1127 1.1 christos Elf_Internal_Rela *irel, *irelend;
1128 1.1 christos bfd_vma toaddr;
1129 1.1 christos Elf_Internal_Sym *isymbuf, *isym, *isymend;
1130 1.1 christos struct elf_link_hash_entry **sym_hashes;
1131 1.1 christos struct elf_link_hash_entry **end_hashes;
1132 1.1 christos unsigned int symcount;
1133 1.1 christos
1134 1.1 christos symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
1135 1.1 christos isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents;
1136 1.1 christos
1137 1.1 christos sec_shndx = _bfd_elf_section_from_bfd_section (abfd, sec);
1138 1.1 christos
1139 1.1 christos contents = elf_section_data (sec)->this_hdr.contents;
1140 1.1 christos
1141 1.1 christos toaddr = sec->size;
1142 1.1 christos
1143 1.1 christos irel = elf_section_data (sec)->relocs;
1144 1.1 christos irelend = irel + sec->reloc_count;
1145 1.1 christos
1146 1.1 christos /* Actually delete the bytes. */
1147 1.1 christos memmove (contents + addr, contents + addr + count,
1148 1.1 christos (size_t) (toaddr - addr - count));
1149 1.1 christos
1150 1.1 christos sec->size -= count;
1151 1.1 christos
1152 1.1 christos /* Adjust all the relocs. */
1153 1.1 christos for (irel = elf_section_data (sec)->relocs; irel < irelend; irel++)
1154 1.1 christos {
1155 1.1 christos unsigned char code;
1156 1.1 christos unsigned char offset;
1157 1.1 christos unsigned short raddr;
1158 1.1 christos unsigned long old_offset;
1159 1.1 christos int branch_pos;
1160 1.1 christos
1161 1.1 christos old_offset = irel->r_offset;
1162 1.1 christos
1163 1.1 christos /* See if this reloc was for the bytes we have deleted, in which
1164 1.1 christos case we no longer care about it. Don't delete relocs which
1165 1.1 christos represent addresses, though. */
1166 1.1 christos if (ELF32_R_TYPE (irel->r_info) != R_M68HC11_RL_JUMP
1167 1.1 christos && irel->r_offset >= addr && irel->r_offset < addr + count)
1168 1.1 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info),
1169 1.1 christos R_M68HC11_NONE);
1170 1.1 christos
1171 1.1 christos if (ELF32_R_TYPE (irel->r_info) == R_M68HC11_NONE)
1172 1.1 christos continue;
1173 1.1 christos
1174 1.1 christos /* Get the new reloc address. */
1175 1.1 christos if ((irel->r_offset > addr
1176 1.1 christos && irel->r_offset < toaddr))
1177 1.1 christos irel->r_offset -= count;
1178 1.1 christos
1179 1.1 christos /* If this is a PC relative reloc, see if the range it covers
1180 1.1 christos includes the bytes we have deleted. */
1181 1.1 christos switch (ELF32_R_TYPE (irel->r_info))
1182 1.1 christos {
1183 1.1 christos default:
1184 1.1 christos break;
1185 1.1 christos
1186 1.1 christos case R_M68HC11_RL_JUMP:
1187 1.1 christos code = bfd_get_8 (abfd, contents + irel->r_offset);
1188 1.1 christos switch (code)
1189 1.1 christos {
1190 1.1 christos /* jsr and jmp instruction are also marked with RL_JUMP
1191 1.1 christos relocs but no adjustment must be made. */
1192 1.1 christos case 0x7e:
1193 1.1 christos case 0x9d:
1194 1.1 christos case 0xbd:
1195 1.1 christos continue;
1196 1.1 christos
1197 1.1 christos case 0x12:
1198 1.1 christos case 0x13:
1199 1.1 christos branch_pos = 3;
1200 1.1 christos raddr = 4;
1201 1.1 christos
1202 1.1 christos /* Special case when we translate a brclr N,y into brclr *<addr>
1203 1.1 christos In this case, the 0x18 page2 prefix is removed.
1204 1.1 christos The reloc offset is not modified but the instruction
1205 1.1 christos size is reduced by 1. */
1206 1.1 christos if (old_offset == addr)
1207 1.1 christos raddr++;
1208 1.1 christos break;
1209 1.1 christos
1210 1.1 christos case 0x1e:
1211 1.1 christos case 0x1f:
1212 1.1 christos branch_pos = 3;
1213 1.1 christos raddr = 4;
1214 1.1 christos break;
1215 1.1 christos
1216 1.1 christos case 0x18:
1217 1.1 christos branch_pos = 4;
1218 1.1 christos raddr = 5;
1219 1.1 christos break;
1220 1.1 christos
1221 1.1 christos default:
1222 1.1 christos branch_pos = 1;
1223 1.1 christos raddr = 2;
1224 1.1 christos break;
1225 1.1 christos }
1226 1.1 christos offset = bfd_get_8 (abfd, contents + irel->r_offset + branch_pos);
1227 1.1 christos raddr += old_offset;
1228 1.1 christos raddr += ((unsigned short) offset | ((offset & 0x80) ? 0xff00 : 0));
1229 1.1 christos if (irel->r_offset < addr && raddr > addr)
1230 1.1 christos {
1231 1.1 christos offset -= count;
1232 1.1 christos bfd_put_8 (abfd, offset, contents + irel->r_offset + branch_pos);
1233 1.1 christos }
1234 1.1 christos else if (irel->r_offset >= addr && raddr <= addr)
1235 1.1 christos {
1236 1.1 christos offset += count;
1237 1.1 christos bfd_put_8 (abfd, offset, contents + irel->r_offset + branch_pos);
1238 1.1 christos }
1239 1.1 christos else
1240 1.1 christos {
1241 1.1 christos /*printf ("Not adjusted 0x%04x [0x%4x 0x%4x]\n", raddr,
1242 1.1 christos irel->r_offset, addr);*/
1243 1.1 christos }
1244 1.1 christos
1245 1.1 christos break;
1246 1.1 christos }
1247 1.1 christos }
1248 1.1 christos
1249 1.1 christos /* Adjust the local symbols defined in this section. */
1250 1.1 christos isymend = isymbuf + symtab_hdr->sh_info;
1251 1.1 christos for (isym = isymbuf; isym < isymend; isym++)
1252 1.1 christos {
1253 1.1 christos if (isym->st_shndx == sec_shndx
1254 1.1 christos && isym->st_value > addr
1255 1.1 christos && isym->st_value <= toaddr)
1256 1.1 christos isym->st_value -= count;
1257 1.1 christos }
1258 1.1 christos
1259 1.1 christos /* Now adjust the global symbols defined in this section. */
1260 1.1 christos symcount = (symtab_hdr->sh_size / sizeof (Elf32_External_Sym)
1261 1.1 christos - symtab_hdr->sh_info);
1262 1.1 christos sym_hashes = elf_sym_hashes (abfd);
1263 1.1 christos end_hashes = sym_hashes + symcount;
1264 1.1 christos for (; sym_hashes < end_hashes; sym_hashes++)
1265 1.1 christos {
1266 1.1 christos struct elf_link_hash_entry *sym_hash = *sym_hashes;
1267 1.1 christos if ((sym_hash->root.type == bfd_link_hash_defined
1268 1.1 christos || sym_hash->root.type == bfd_link_hash_defweak)
1269 1.1 christos && sym_hash->root.u.def.section == sec
1270 1.1 christos && sym_hash->root.u.def.value > addr
1271 1.1 christos && sym_hash->root.u.def.value <= toaddr)
1272 1.1 christos {
1273 1.1 christos sym_hash->root.u.def.value -= count;
1274 1.1 christos }
1275 1.1 christos }
1276 1.1 christos }
1277 1.1 christos
1278 1.1 christos /* Specific sections:
1279 1.1 christos - The .page0 is a data section that is mapped in [0x0000..0x00FF].
1280 1.1 christos Page0 accesses are faster on the M68HC11. Soft registers used by GCC-m6811
1281 1.1 christos are located in .page0.
1282 1.1 christos - The .vectors is the section that represents the interrupt
1283 1.1 christos vectors. */
1284 1.1 christos static const struct bfd_elf_special_section elf32_m68hc11_special_sections[] =
1285 1.1 christos {
1286 1.1 christos { STRING_COMMA_LEN (".eeprom"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
1287 1.1 christos { STRING_COMMA_LEN (".page0"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
1288 1.1 christos { STRING_COMMA_LEN (".softregs"), 0, SHT_NOBITS, SHF_ALLOC + SHF_WRITE },
1289 1.1 christos { STRING_COMMA_LEN (".vectors"), 0, SHT_PROGBITS, SHF_ALLOC },
1290 1.1 christos { NULL, 0, 0, 0, 0 }
1291 1.1 christos };
1292 1.1 christos
1293 1.1 christos #define ELF_ARCH bfd_arch_m68hc11
1295 1.1 christos #define ELF_TARGET_ID M68HC11_ELF_DATA
1296 1.1.1.2 christos #define ELF_MACHINE_CODE EM_68HC11
1297 1.1 christos #define ELF_MAXPAGESIZE 0x1000
1298 1.1 christos
1299 1.1 christos #define TARGET_BIG_SYM m68hc11_elf32_vec
1300 1.1 christos #define TARGET_BIG_NAME "elf32-m68hc11"
1301 1.1 christos
1302 1.1 christos #define elf_info_to_howto 0
1303 1.1 christos #define elf_info_to_howto_rel m68hc11_info_to_howto_rel
1304 1.1 christos #define bfd_elf32_bfd_relax_section m68hc11_elf_relax_section
1305 1.1 christos #define elf_backend_check_relocs elf32_m68hc11_check_relocs
1306 1.1 christos #define elf_backend_relocate_section elf32_m68hc11_relocate_section
1307 1.1 christos #define elf_backend_add_symbol_hook elf32_m68hc11_add_symbol_hook
1308 1.1 christos #define elf_backend_object_p 0
1309 1.1 christos #define elf_backend_final_write_processing 0
1310 1.1 christos #define elf_backend_can_gc_sections 1
1311 1.1 christos #define elf_backend_special_sections elf32_m68hc11_special_sections
1312 1.1 christos #define elf_backend_merge_symbol_attribute elf32_m68hc11_merge_symbol_attribute
1313 1.1 christos
1314 1.1 christos #define bfd_elf32_bfd_link_hash_table_create \
1315 1.1 christos m68hc11_elf_bfd_link_hash_table_create
1316 1.1 christos #define bfd_elf32_bfd_merge_private_bfd_data \
1317 1.1 christos _bfd_m68hc11_elf_merge_private_bfd_data
1318 1.1 christos #define bfd_elf32_bfd_set_private_flags _bfd_m68hc11_elf_set_private_flags
1319 1.1 christos #define bfd_elf32_bfd_print_private_bfd_data \
1320 _bfd_m68hc11_elf_print_private_bfd_data
1321
1322 #include "elf32-target.h"
1323